首页> 外文期刊>Analytical Chemistry >CONTROLLED DEPOSITION OF GLUCOSE OXIDASE ON PLATINUM ELECTRODE BASED ON AN AVIDIN BIOTIN SYSTEM FOR THE REGULATION OF OUTPUT CURRENT OF GLUCOSE SENSORS
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CONTROLLED DEPOSITION OF GLUCOSE OXIDASE ON PLATINUM ELECTRODE BASED ON AN AVIDIN BIOTIN SYSTEM FOR THE REGULATION OF OUTPUT CURRENT OF GLUCOSE SENSORS

机译:基于亲和素生物素系统的葡萄糖电极上葡萄糖氧化酶的可控沉积以调节葡萄糖传感器的输出电流

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A facile method for the regulation of enzyme loading on an electrode surface has been studied using avidin and biotinylated glucose oxidase (GOx). It was demonstrated that an alternate and repeated deposition of avidin and biotinylated GOx gives a protein thin film probably composed of avidin monolayers and biotinylated GOx monolayers which are connected with each other through strong affinity between avidin and biotin moieties of the enzyme (binding constant, 10(15) M(-1)). Amperometric response of the glucose sensors constructed by this method was controlled stepwise and rather precisely by regulating the number of GOx layers deposited (or the loading of GOx). For example, the output current of the sensors to 1 mM glucose was enhanced to ca, 1300 and 2800 nA after deposition of 10 and 20 layers of GOx, respectively, as compared with 110 nA for the monolayer GOx sensor. The enhanced response contributed to the extension of the dynamic range of the sensors, especially at a lower glucose concentration. The response time of the sensors was satisfactorily fast (ca, 20 s), irrespective of the number of GOx layers.
机译:已经使用抗生物素蛋白和生物素化的葡萄糖氧化酶(GOx)研究了一种调节电极表面酶负载的简便方法。已证明,抗生物素蛋白和生物素化的GOx的交替重复沉积会产生蛋白质薄膜,该蛋白薄膜可能由抗生物素蛋白的单层和生物素​​化的GOx的单层组成,它们通过抗生物素蛋白和酶的生物素部分之间的强亲和力相互连接(结合常数,10 (15)M(-1))。通过此方法构造的葡萄糖传感器的安培响应是逐步控制的,而是通过调节沉积的GOx层数(或GOx的负载)来精确控制的。例如,与单层GOx传感器的110 nA相比,在沉积10层和20层GOx之后,传感器对1 mM葡萄糖的输出电流分别提高到大约1300、2800 nA。增强的响应有助于扩大传感器的动态范围,尤其是在较低的葡萄糖浓度下。不管GOx层的数量如何,传感器的响应时间均令人满意地快(约20 s)。

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